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Human Mediator Subunit MED26 Functions as a Docking Site for Transcription Elongation Factors

  作者 Takahashi, H; Parmely, TJ; Sato, S; Tomomori-Sato, C; Banks, CAS; Kong, SE; Szutorisz, H; Swanson, SK; Martin-Brown, S; Washburn, MP; Florens, L; Seidel, CW; Lin, CQ; Smith, ER; Shilatifard, A; Conaway, RC; Conaway, JW  
  选自 期刊  Cell;  卷期  2011年146-1;  页码  92-104  
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[摘要]Promoter-proximal pausing by initiated RNA polymerase II (Pol II) and regulated release of paused polymerase into productive elongation has emerged as a major mechanism of transcription activation. Reactivation of paused Pol II correlates with recruitment of super-elongation complexes (SECs) containing ELL/EAF family members, P-TEFb, and other proteins, but the mechanism of their recruitment is an unanswered question. Here, we present evidence for a role of human Mediator subunit MED26 in this process. We identify in the conserved N-terminal domain of MED26 overlapping docking sites for SEC and a second ELL/EAF-containing complex, as well as general initiation factor TFIID. In addition, we present evidence consistent with the model that MED26 can function as a molecular switch that interacts first with TFIID in the Pol II initiation complex and then exchanges TFIID for complexes containing ELL/EAF and P-TEFb to facilitate transition of Pol II into the elongation stage of transcription.

 
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